CONNECTIONS, CONTROL AND DISPLAY ELEMENTS
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ENTER
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POWER IN
TRUE1-compatible mains input socket Operating voltage 100–240 V AC/50–60 Hz.
2
POWER OUT
TRUE1-compatible mains output socket for power supply to additional CAMEO spotlights Ensure that the total current consumption of all
connected devices does not exceed the value specified on the device in amperes (A).
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FUSE
Fuse holder for 5 x 20 mm micro fuses. IMPORTANT NOTE: Exclusively replace the fuse with a fuse of the same type and values
(T 2AL / 250 V). If a fuse trips repeatedly, please contact an authorized service center.
4
DMX IN
Male 5-pin XLR connector to connect a DMX control device (e.g. DMX console).
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DMX OUT
Female 5-pin XLR connector to transmit the DMX control signal.
OLED DISPLAY
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Display for the currently active operating mode and the menu items in the processing menu.
DIM / ENTER / SELECT
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Push button rotary encoder to set and control the spotlight.
DIM - When used in CCT, HSI, Direct LED, Gel, User Color or Play Loop stand-alone mode, the encoder serves as a master dimmer (rotary encoder).
ENTER - 1. Pressing ENTER brings you to the menu level to select the mode. 2. This navigates you one level deeper
into the menu structure. 3. Confirm the new value, such as a change to the DMX address, by pressing ENTER
SELECT - Rotate the encoder to select the menu item from the menu level and change the value within the menu item (such as DMX address).
The function of the center push button rotary encoder (rotate and press) is shown on the corresponding menu item at the center of the
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display (middle row = rotate, lower row = press).
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ESC - If the press function on the right push button rotary encoder is not shown explicitly in the display, then pressing the encoder
navigates to the next higher menu level.
ZOOM
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Adjustment knobs for manual configuration of the beam angle are located on either side of the housing. The two knobs are positioned
directly across from one another and are mechanically linked. The knobs can be turned for continuous adjustment of the spotlight beam
angle, with the zoom tube on the Fresnel lens moving in and out of the housing through a gear-and-pinion system. The further the zoom
tube emerges from the housing, the smaller the beam angle. A stopping mechanism is in place to prevent the tube from falling out of the
housing.
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